TECHNICAL FIELD
[0001] The present invention relates to an apparatus for perfusion of a liquid utilizing
aeration, defined in the preamble part of the patent claim.
[0002] Perfusion of a breeding liquid for breathing control and nutrition supply is essential
for breeding of the life such as cell culture, hydroponics and breeding. An apparatus
for perfusing a liquid of small capacity is normally or usually such that water is
moved by a water-flow pump to perfuse the liquid. For perfusion of a liquid of large
capacity such as several hundred tons or several thousand tons, a super-huge water-flow
pump is required in order to eliminate a stagnant area where the liquid is not perfused.
Actually, a plurality of water-flow pumps are installed to cope with the stagnation,
or such operation as to completely replace the breeding liquid copes with the stagnation.
The invention can cope with the automatic perfusion of the above-described liquid
of small capacity only by simple aeration. It is considered that, in a principle aspect,
the invention can cope with perfusion of the liquid of large capacity.
[0003] An apparatus having the features of the preamble part of the patent claim is disclosed
in US-A 3,898,018. The hydraulically controlled pneumatic ejector for pumping liquids
disclosed therein works discontinuously, since the liquid is pumped away.
[0004] It is the object of the invention to provide an appartus for perfusion of a liquid
utilizing aeration which is capable to work continuously.
[0005] This object is solved by the apparatus of the patent claim.
[0006] The invention is originally directed to a perfusion apparatus, but, if a one-way-valve
is installed, the invention functions as a water-flow-pump. First, the background
of the water-flow-pump will be described. Mechanical construction of the normal or
usual water-flow pump utilizes a driving force of a rotor which takes various configurations.
Although it is possible to create the water-flow pump from combination of piston movement
and the one-way-valve, appearance of an electric motor, which is superior in efficiency,
does not so much create the water-flow pump at present. However, the invention resembles
the piston movement. That is, the invention perfuses the liquid upwardly and downwardly
by water flow which utilizes the piston movement of air, and the valve is associated
with the water flow to form the water-flow pump.
[0007] Regarding the perfusion apparatus, water is moved by the existing water-flow pump
for the perfusion of the liquid of small capacity, to stir the liquid thereby eliminating
the stagnant area, so that the liquid is perfused. In the invention, since the liquid
is moved upwardly and downwardly so as to be perfused, the liquid is perfused without
any stagnant area. Appearance of the stagnant area is inevitable for the liquid of
large capacity. The invention solves difficulty of perfusion by a simple construction.
[0008] An important point in doing the invention is the function of a small pipe. That is,
at one time, water enters a lumen and serves as "water plug" so that air is accumulated.
Subsequently, the water in the lumen is blown out to aerate the lumen so that the
accumulated air is quickly open and is removed.
DISCLOSURE OF THE INVENTION
[0009] In common to Figs. 1 through 5, the arrows
A,
B and
C indicate a tube, a small pipe and a blast pipe, respectively. Water has its surface
which is covered with the shaded area. In common to Figs. 1 through 4,
a and
b denote an uppermost end and a lowermost end of the tube, respectively, while
c,
d and
e designate an uppermost end on the outside of a container, a lowermost end on the
inside of the container (also on the outside of the container in Fig. 4), and an uppermost
end on the inside of the container, respectively.
[0010] Fig. 1 is a vertical cross-sectional view of an apparatus in which no water enters.
If water enters without blowing of air under the condition illustrated in Fig. 1,
the water enters the container through the tube
A, and creates an artificial water surface at the height of
e, and the excess or surplus water is accumulated on an upper wall. At this time, the
condition is brought to one illustrated in Fig. 2. Subsequently, air blowing starts
through the blast pipe
C, the artificial water surface descends until
d that is the lowermost end of the pipe
B. Simultaneously, the water surface within the pipe also descends. In due course,
the artificial water surface (water surface within the pipe) further descends beyond
d. This is represented in Fig. 3. Now, in the case where the pipe
B is sufficiently thin in inner diameter, for example, of the order of 5 mm, the gravitational
weight and the surface tension of the water act upon each other so that the water
serving as the plug within the lumen of the pipe is discharged, and the lumen of the
pipe is aerated. Thus, the air quickly escapes upwardly through the pipe. Outflow
of the air completes at the height of
e. Then, again, the water flows backward in the pipe so that the lumen of the pipe
is plugged by the water. Thus, the pipe becomes interruption of communication. Since
the air is blown continuously, the artificial water surface again starts to descend.
In this connection, if the inner diameter of pipe
B becomes in the order of 40 mm, the surface tension of the water tends to be nullified
by the gravitational weight of the water, so that the water is not discharged and
the pipe is not completely aerated. As a result, only a small quantity of delivered
air ascends and the pipe is aerated. At this time, since the plug for the water cannot
be released, there is no function of continuous perfusion.
[0011] The positions, where
c,
d and
e in the small pipe
B are located respectively, are very important. If
c is not sufficiently higher than e, there is a fear that the water does not flow well
backward. If
c and
e have their difference (water level difference) therebetween of the order of 1.5 cm,
the water flows well backward. If the position of
d is immediately above the horizontal level of the entrance
b of the tube
A, and if there is no difference (water level difference), there is such a possibility
that the air passes through the tube.
d and
b should have their difference therebetween more than a value of the order of 1 cm.
[0012] It is not necessarily required that the opening
c of the small pipe
B is located on the upper wall of the container. As shown in Fig. 4, if an adequate
water level is given by another container which is attached to the container, the
apparatus has a function of perfusion.
[0013] There is particularly no limit or restriction as to the position of the blast pipe
within the container. If the blast pipe is installed at a lower position, there is
loss in energy. If the quantity of aeration is excessively large, timing of backward
flow of the water (water level of
e) is lost. In this case, the inner diameter of the pipe
B should be enlarged.
[0014] In Fig. 5,
m designates a valve which is mounted at
b (lowermost end) of the tube
A. The valve is a one-way-valve open only upwardly.
n denotes a valve mounted to the side wall which is located at a lower section of the
container. The valve opens one way only toward the interior of the container. Fig.
5 is one at the time the apparatus according to the invention has a function of a
pump, and is a vertical cross-sectional view thereof.
INDUSTRIAL APPLICABILITY
[0015] This invention is compelled to perfusion or, rotating or involving culture of the
culture fluid in order to supply oxygen and nutrition in culture of animals or plant
cells. The perfusion apparatus according to the invention is directed to a new and
inexpensive method.
[0016] Further, if the one-way-valve is mounted to determine flow of the liquid in a constant
direction, the perfusion apparatus has a function as the water-flow pump. This means
that only air piping enables a simple and inexpensive pump to be installed which does
not use electricity.
1. Apparatus for perfusion of a liquid utilizing aeration, comprising an intermediate
lid, mounted to a bucket to completely seal the latter, the bucket having a sealed
container on its lower side, further comprising a hollow tube A extending through an upper wall of the container, an upper entrance a of the tube A being located above the upper wall on the outside of the container, while a lower
entrance b is positioned adjacent a bottom wall at a location within the container, a small
pipe B having a first opening c and a second opening e located at a position immediately below the upper wall at a location within the container,
an intermediate section of the small pipe B being folded and bent downwardly such that a lowermost end d of the small pipe B is located above the lower entrance b of the tube A, and a blast pipe C for delivering gas such as air or the like, characterized in that the first opening
c of that small pipe B which has an inner diametre of less than 40 mm, is located above the upper wall at
a location on the outside of the container, the level difference between the openings
c and e being in the order of 1,5 cm, and the level difference between the lowermost end
d of the small pipe B and the lower entrance b of the tube A being more than about 1 cm and said blast pipe C extends through the container, so that, if the liquid enters the bucket through the
tube A and if gas is continously delivered through the blast pipe C, the liquid practices such vertical movement that the liquid slowly ascends through
the tube and quickly descends in order to participate in another cycle.
1. Vorrichtung für die Perfusion einer Flüssigkeit unter Verwendung von Belüftung, mit
einem zwischengeschalteten Deckel, der an einer Wanne angebracht ist, um die letztere
vollständig abzudichten, wobei die Wanne einen abgedichteten Behälter auf ihrer unteren
Seite hat, weiterhin mit einem hohlen Rohr A, das sich durch eine obere Wand des Behälters erstreckt, wobei ein oberer Einlaß
a des Rohrs A oberhalb der oberen Wand auf der Außenseite des Behälters angeordnet ist, während
ein unterer Einlaß b benachbart einer Bodenwand an einer Stelle innerhalb des Behälters positioniert ist,
einem kleinen Rohr B, das eine erste Öffnung c und eine zweite Öffnung e an einer Position unmittelbar unterhalb der oberen Wand an einem Ort innerhalb des
Behälters angeordnet hat, wobei ein Zwischenabschnitt des kleinen Rohres B abgeklappt und nach unten gekrümmt ist, so daß ein unterstes Ende d des kleinen Rohres B oberhalb des unteren Einlasses b des Rohres A angeordnet ist, und einem Lüftungsrohr C zum Liefern eines Gases, so wie Luft oder dergleichen, dadurch gekennzeichnet, daß
die erste Öffnung c des kleinen Rohres B, das einen Innendurchmesser von weniger als 40 mm hat, oberhalb der oberen Wand an
einer Stelle auf der Außenseite des Behälters angeordnet ist, wobei der Pegelunterschied
zwischen den Öffnungen c und e in der Größenordnung von 1,5 cm ist und der Pegelunterschied zwischen dem untersten
Ende d des kleinen Rohres B und dem unteren Einlaß b des Rohres A mehr als etwa 1 cm ist und das Lüftungsrohr C sich durch den Behälter erstreckt, so daß, wenn die Flüssigkeit in die Wanne durch
das Rohr A eintritt und wenn Gas kontinuierlich durch das Lüftungsrohr C geliefert wird, die Flüssigkeit eine solche vertikale Bewegung ausführt, daß die
Flüssigkeit langsam durch das Rohr aufsteigt und schnell absteigt, um in einem anderen
Zyklus teilzunehmen.
1. Appareil pour la perfusion d'un liquide, utilisant l'aération, comprenant un couvercle
intermédiaire monté sur une cuve pour la fermer complètement, la cuve ayant un récipient
fermé hermétiquement sur son côté inférieur, comprenant en outre un tube creux A passant à travers une paroi supérieure du récipient, une entrée supérieure a du tube A étant située au-dessus de la paroi supérieure, à l'extérieur du récipient, tandis
qu'une entrée inférieure b est placée adjacente à une paroi inférieure, en un emplacement dans le récipient,
un petit tuyau B ayant une première ouverture c et une deuxième ouverture e située en une position immédiatement au-dessous de la paroi supérieure, en un emplacement
dans le récipient, une section intermédiaire du petit tuyau B étant pliée et incurvée vers le bas, de manière que l'extrémité d la plus basse du petit tuyau B soit située au-dessus de l'entrée inférieure b du tube A, et un tuyau d'évent C pour fournir du gaz tel que de l'air ou analogue, caractérisé en ce que la première
ouverture c de ce petit tuyau B qui a un diamètre intérieur inférieur à 40 mm est située au-dessus de la paroi supérieure,
en un emplacement situé à l'extérieur du récipient, la différence de niveau entre
les ouvertures c et e étant de l'ordre de 1,5 cm, et la différence de niveau entre l'extrémité d la plus basse du petit tuyau B et l'entrée inférieure b du tuyau A étant supérieure à à peu près 1 cm et ledit tuyau d'évent C traverse le récipient, de manière que, si le liquide entre dans la cuve via le tube
A et si du gaz est fourni en continu par le tuyau d'évent C, le liquide effectue un mouvement vertical tel que le liquide monte lentement dans
le tuyau et descend rapidement, en vue de participer à un autre cycle.